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DESY-led team explores alternative method for storing hydrogen; Ir-seeded Pd nanocluster superlattices

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Researchers led by Andreas Stierle at Deutsches Elektronen-Synchrotron (DESY) have laid the foundations for an alternative method for storing hydrogen, using iridium-seeded palladium nanocluster superlattices with 1.2 The fact that palladium can absorb hydrogen like a sponge has been known for some time. —Andreas Stierle.

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Siemens Energy teams up with Duke Energy, Clemson University to study hydrogen use

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Siemens Energy, Duke Energy and Clemson University have teamed up to study the use of hydrogen for energy storage and as a low- or no-carbon fuel source to produce energy at Duke Energy’s combined heat and power plant located at Clemson University in South Carolina.

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LSBU researchers investigating metal hydride hydrogen storage for buses

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Researchers from London South Bank University (LSBU), School of the Built Environment and Architecture, are investigating the use of metal hydrides to absorb, release and store hydrogen for fuel cell buses. Principle of a metal hydride tank for the reversible storage of hydrogen. From Adelhelm & Jongh (2011).

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Rystad Energy expects strong growth in hydrogen pipelines through 2035

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Independent research and business intelligence company Rystad Energy estimates that there are about 91 planned hydrogen pipeline projects in the world, totaling 30,300 kilometers and due to come online by around 2035. New hydrogen infrastructure is starting to materialize as the world seeks to accelerate its path to net zero.

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European HYFLEXPOWER project to demo first integrated power-to-X-to-power hydrogen gas turbine

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A consortium comprising Engie Solutions, Siemens Gas and Power, Centrax, Arttic, German Aerospace Center (DLR) and four European universities is implementing the HYFLEXPOWER project funded by the European Commission under the Horizon 2020 Framework Program for Research and Innovation (Grant Agreement 884229).

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Study finds total greenhouse gas footprint of blue hydrogen “quite high” due to fugitive methane

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“Blue” hydrogen—produced through steam methane reforming (SMR) of natural gas or coal gasification, but with CO 2 capture and storage—is being described as having low or zero carbon emissions. Our analysis assumes that captured carbon dioxide can be stored indefinitely, an optimistic and unproven assumption. Energy Sci Eng.

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Wärtsilä, Höegh LNG and partners receive funding of €5.9M to develop ammonia as hydrogen carrier

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Technology group Wärtsilä, along with Norway-based Höegh LNG and other partners, Institute for Energy Technology (IFE), University of South-East Norway, Sustainable Energy and BASF SE have received funding of approximately @5.9 million from the Norwegian Government for the development of ammonia as a hydrogen carrier for the energy market.

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